Acknowledgement
본 연구는 국토교통부/국토교통과학기술진흥원의 지원으로 수행되었음(도심 지하 교통 인프라 건설 및 운영 기술 고도화 연구, 과제번호 21UUTI-B157793-02).
References
- Barton, N. (2004), The why's and how's of high pressure grouting - Part 1, 2, TTI Sept, pp. 28-30.
- Davik, K.I., Andersson, H. (2001), "Urban road tunnels, a subsurface solution to a surface problem", Publication No. 12 Norwegian Tunnelling Society, pp. 35-40.
- El Tani, M. (1999), "Water inflow into tunnels", Proceedings of the World Tunnel Congress ITA-AITES, Oslo, Balkema, pp. 61-70.
- ETRL (2014), Development of monitoring and management system technology for urban underground facilities based on IoT, pp. 29-38.
- Fernandez, G., Alvarez, T.A. (1994), "Seepage-induced effective stresses and water pressures around pressure tunnels", Journal of Geotechnical Engineering, Vol. 120, No. 1, pp. 108-128. https://doi.org/10.1061/(ASCE)0733-9410(1994)120:1(108)
- Goodman, R.E., Moye, D.G., Van Schalkwyk, A., Javandel, I. (1965), "Ground water inflows during tunnel driving", Bulletin of the International Association of Engineering Geologists 2, No. 1, pp. 39-56.
- Grov, E., Woldmo, O. (2012), "Modern pre-grouting technology in Norway", Proceedings of the Fourth International Conference on Grouting and Deep Mixing, New Orleans, pp. 805-809.
- Hard Rock Tunnel Grouting Practice in Finland, Sweden, and Norway (2003), Finnish tunnelling association.
- Joo, E.J., Shin, J.H. (2014), "Relationship between water pressure and inflow rate in underwater tunnels and buried pipes", Geotechnique, Vol. 64, No. 3, pp. 226-231. https://doi.org/10.1680/geot.12.P.185
- Karlsrud, K. (2001), "Water control when tunnelling under urban areas in the Olso region", NFF Publication No. 12, Vol. 4, pp. 27-33.
- Korea Land & Housing Corporation (2020), Manual for underground safety impact assessment-tunnel.
- Lei, S. (1999), "An analytical solution for steady flow into a tunnel", Ground Water, Vol. 37, No. 3, pp. 23-26. https://doi.org/10.1111/j.1745-6584.1999.tb00953.x
- Li, P., Wang, F., Long, Y., Zhao, X. (2018), "Investigation of steady water inflow into a subsea grouted tunnel", Tunnelling and Underground Space Technology, No. 80, pp. 92-102.
- Melby, K., Ovstedal, E. (2001), "Subsea tunnels in Norway", Proceedings of the 4th Symposium on Strait Crossings, Bergen, Norway, pp. 6.
- Ministry of Land, Infrastructure and Transport (2015), Ground subsidence safety management manual, pp. 9-30.
- Moon, J., and Fernandez, G. (2010), "Effect of excavation-induced groundwater level drawdown on tunnel inflow in a jointed rock mass", Engineering Geology, Vol. 110, No. 3-4, pp. 33-42. https://doi.org/10.1016/j.enggeo.2009.09.002
- Road Tunnels-Manual 021 (2004), Norwegian public roads administration, pp. 26-27.
- Seoul Metropolitan Government (2016a), Groundwater management manual for construction sites.
- Seoul Metropolitan Government (2016b), Summary report of Seoul Groundwater management plan, pp. 5.
- Seoul Metropolitan Government (2017), Guidelines for submitting request for qualifications (RFQ), pp. 7.
- Shin, J.H. (2010), "Analytical and combined numerical methods evaluating pore water pressure on tunnels", Geotechnique, Vol. 60, No. 2, pp. 141-145. https://doi.org/10.1680/geot.8.T.035
- Shin, J.H. (2020), Tunnel Engineering, CIR, Seoul, pp. 19-20.
- Shin, J.H., Potts, D.M., Zdravkovic, L. (2005), "The effect of pore-water pressure on NATM tunnel linings in decomposed granite soil", Canadian Geotechnical Journal, Vol. 42, No. 6, pp. 1585-1599. https://doi.org/10.1139/t05-072
- Statistics Korea (2014), General status of urban railway in Korea.
- Su, K., Zhou, Y., Wu, H., Shi, C., Zhou, L. (2017), "An analytical method for groundwater inflow into a drained circular tunnel", Groundwater, Vol. 55, No. 5, pp. 712-721. https://doi.org/10.1111/gwat.12513
- Tonon, F. (2009), "ADECO as an alternative to NATM : how it works, why it works", Proceedings of the Rapid Excavation & Tunnelling Conference 2009, Part 15 SEM, USA, pp. 942-968.
- Woo, J.T. (2009), "A study on comparison of a ground water influx quantity in Seoul subway tunnel", Journal of Korean Tunnelling and Underground Space Association, Vol. 11, No. 4, pp. 353-359.
- Xu, Z., Wang, X., Li, S., Gao, B., Shi, S., Xu, X. (2019), "Parameter optimization for the thickness and hydraulic conductivity of tunnel lining and grouting rings", KSCE Journal of Civil Engineering, Vol. 23, No. 6, pp. 2772-2783. https://doi.org/10.1007/s12205-019-1509-9